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<Emphasis Type="Italic">Alternaria</Emphasis> species associated with early blight epidemics on tomato and other <Emphasis Type="Italic">Solanaceae</Emphasis> crops in northwestern Algeria
Authors:Nabahat Bessadat  Romain Berruyer  Bruno Hamon  Nelly Bataille-Simoneau  Soumaya Benichou  Mabrouk Kihal  Djamel E Henni  Philippe Simoneau
Institution:1.Department of Genetics and Plant Breeding,Poznan University of Life Sciences,Poznan,Poland;2.Department of Pathogen Genetics and Plant Resistance,Institute of Plant Genetics of the Polish Academy of Sciences,Poznan,Poland;3.Department of Biology of Environmental Stresses,Institute of Plant Genetics of the Polish Academy of Sciences,Poznan,Poland
Abstract:Clubroot, caused by the protozoan parasite Plasmodiophora brassicae Woronin, is one of the most damaging diseases of Brassica napus worldwide. Resistant plant material is valuable for cultivation in all areas of high incidence of the disease and intensive growth of oilseed rape. We have evaluated clubroot resistance, plant morphology and seed quality in 15 lines of an F4 generation and selected six lines of F5 generation of interspecific hybrids obtained from a cross between a male sterile line of B. napus ‘MS8’, selected from resynthesized oilseed rape (B. rapa ssp. chinensis × B. oleracea var. gemmifera) and an ecotype of B. rapa ssp. pekinensis. Clubroot resistance was evaluated using a bioassay with P1-P5 pathotypes of P. brassicae (according to the classification of Somé et al. 1996). The resistance to the pathotype P1 was successfully fixed in the F5 generation, and improved in some lines in respect to the pathotypes P2-P4. The resistance to P1 and the other tested pathotypes was not linked. Characterization of plant material included recent techniques of FISH and BAC-FISH with a special focus on the analysis of ribosomal DNA (rDNA) of selected individuals. Two hybrid lines combined high levels of resistance with appropriate plant morphology, good seed quality traits and a stable chromosome number and arrangement. Recent techniques of ‘chromosome painting’ provided good insight into chromosome organization in the hybrids obtained, and offered opportunities of further improvement of the breeding process.
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